首页> 外文期刊>Journal of geophysics and engineering >Investigation of the subsurface geometry of fissure-ridge travertine with GPR, Pamukkale, western Turkey
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Investigation of the subsurface geometry of fissure-ridge travertine with GPR, Pamukkale, western Turkey

机译:土耳其西部棉花堡的GPR法研究裂脊钙华的地下几何形状

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摘要

Cracks in the upper crust are the result of either local or regional tectonic stress. Such structural elements are conduits for fluids in the crust. In Pamukkale, hot water which is rich in calcium carbonate emerges from fissures. The hot water issuing from the fissures precipitates travertine both in the fissures and on the surface. As a result, a ridge, which is called fissure-ridge travertine, forms along the central fissure. Fissure-ridge travertines are lens-shaped at the surface. Since fissure-ridge travertines are of great tectonic significance, their surface characteristics have been studied in detail. However, the subsurface geometry of travertine ridges is not well known. GPR was used to examine the subsurface geometry of fissure-ridge travertine and the central fissure. GPR profiles were combined across the ridge to produce a three-dimensional (3D) subsurface image of the travertine mass. The 3D image showed that the thickness and width of the travertine mass are at a maximum near the centre of the ridge and they both decrease asymmetrically towards the ends. Perpendicular GPR slices across the central fissure showed that the thickness of the vertically banded fissure-travertine increases with depth. 3D modelling suggests that the lateral propagation of the central fissure is asymmetric.
机译:上地壳的裂缝是局部或区域构造应力的结果。这种结构元件是外壳中流体的导管。在棉花堡,裂缝中出现了富含碳酸钙的热水。从裂缝中流出的热水在裂缝中和表面上都会沉积石灰华。结果,沿着中央裂缝形成了一个被称为裂缝脊石灰华的脊。裂脊钙华在表面呈透镜状。由于裂脊钙华具有很大的构造意义,因此对其表面特征进行了详细的研究。然而,石灰华脊的地下几何形状不是众所周知的。 GPR用于检查裂脊钙华的地下几何形状和中央裂隙。 GPR剖面在整个山脊上组合在一起,生成了石灰华块的三维(3D)地下图像。 3D图像显示,石灰华块的厚度和宽度在山脊的中心附近最大,并且它们都朝着端部不对称地减小。垂直于中央裂缝的GPR切片显示垂直带状裂缝-钙华的厚度随深度增加。 3D建模表明,中央裂缝的横向传播是不对称的。

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